address.c 18 KB

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  1. #include <linux/device.h>
  2. #include <linux/io.h>
  3. #include <linux/ioport.h>
  4. #include <linux/module.h>
  5. #include <linux/of_address.h>
  6. #include <linux/pci_regs.h>
  7. #include <linux/string.h>
  8. /* Max address size we deal with */
  9. #define OF_MAX_ADDR_CELLS 4
  10. #define OF_CHECK_ADDR_COUNT(na) ((na) > 0 && (na) <= OF_MAX_ADDR_CELLS)
  11. #define OF_CHECK_COUNTS(na, ns) (OF_CHECK_ADDR_COUNT(na) && (ns) > 0)
  12. static struct of_bus *of_match_bus(struct device_node *np);
  13. static int __of_address_to_resource(struct device_node *dev,
  14. const __be32 *addrp, u64 size, unsigned int flags,
  15. const char *name, struct resource *r);
  16. /* Debug utility */
  17. #ifdef DEBUG
  18. static void of_dump_addr(const char *s, const __be32 *addr, int na)
  19. {
  20. printk(KERN_DEBUG "%s", s);
  21. while (na--)
  22. printk(" %08x", be32_to_cpu(*(addr++)));
  23. printk("\n");
  24. }
  25. #else
  26. static void of_dump_addr(const char *s, const __be32 *addr, int na) { }
  27. #endif
  28. /* Callbacks for bus specific translators */
  29. struct of_bus {
  30. const char *name;
  31. const char *addresses;
  32. int (*match)(struct device_node *parent);
  33. void (*count_cells)(struct device_node *child,
  34. int *addrc, int *sizec);
  35. u64 (*map)(__be32 *addr, const __be32 *range,
  36. int na, int ns, int pna);
  37. int (*translate)(__be32 *addr, u64 offset, int na);
  38. unsigned int (*get_flags)(const __be32 *addr);
  39. };
  40. /*
  41. * Default translator (generic bus)
  42. */
  43. static void of_bus_default_count_cells(struct device_node *dev,
  44. int *addrc, int *sizec)
  45. {
  46. if (addrc)
  47. *addrc = of_n_addr_cells(dev);
  48. if (sizec)
  49. *sizec = of_n_size_cells(dev);
  50. }
  51. static u64 of_bus_default_map(__be32 *addr, const __be32 *range,
  52. int na, int ns, int pna)
  53. {
  54. u64 cp, s, da;
  55. cp = of_read_number(range, na);
  56. s = of_read_number(range + na + pna, ns);
  57. da = of_read_number(addr, na);
  58. pr_debug("OF: default map, cp=%llx, s=%llx, da=%llx\n",
  59. (unsigned long long)cp, (unsigned long long)s,
  60. (unsigned long long)da);
  61. if (da < cp || da >= (cp + s))
  62. return OF_BAD_ADDR;
  63. return da - cp;
  64. }
  65. static int of_bus_default_translate(__be32 *addr, u64 offset, int na)
  66. {
  67. u64 a = of_read_number(addr, na);
  68. memset(addr, 0, na * 4);
  69. a += offset;
  70. if (na > 1)
  71. addr[na - 2] = cpu_to_be32(a >> 32);
  72. addr[na - 1] = cpu_to_be32(a & 0xffffffffu);
  73. return 0;
  74. }
  75. static unsigned int of_bus_default_get_flags(const __be32 *addr)
  76. {
  77. return IORESOURCE_MEM;
  78. }
  79. #ifdef CONFIG_PCI
  80. /*
  81. * PCI bus specific translator
  82. */
  83. static int of_bus_pci_match(struct device_node *np)
  84. {
  85. /*
  86. * "vci" is for the /chaos bridge on 1st-gen PCI powermacs
  87. * "ht" is hypertransport
  88. */
  89. return !strcmp(np->type, "pci") || !strcmp(np->type, "vci") ||
  90. !strcmp(np->type, "ht");
  91. }
  92. static void of_bus_pci_count_cells(struct device_node *np,
  93. int *addrc, int *sizec)
  94. {
  95. if (addrc)
  96. *addrc = 3;
  97. if (sizec)
  98. *sizec = 2;
  99. }
  100. static unsigned int of_bus_pci_get_flags(const __be32 *addr)
  101. {
  102. unsigned int flags = 0;
  103. u32 w = be32_to_cpup(addr);
  104. switch((w >> 24) & 0x03) {
  105. case 0x01:
  106. flags |= IORESOURCE_IO;
  107. break;
  108. case 0x02: /* 32 bits */
  109. case 0x03: /* 64 bits */
  110. flags |= IORESOURCE_MEM;
  111. break;
  112. }
  113. if (w & 0x40000000)
  114. flags |= IORESOURCE_PREFETCH;
  115. return flags;
  116. }
  117. static u64 of_bus_pci_map(__be32 *addr, const __be32 *range, int na, int ns,
  118. int pna)
  119. {
  120. u64 cp, s, da;
  121. unsigned int af, rf;
  122. af = of_bus_pci_get_flags(addr);
  123. rf = of_bus_pci_get_flags(range);
  124. /* Check address type match */
  125. if ((af ^ rf) & (IORESOURCE_MEM | IORESOURCE_IO))
  126. return OF_BAD_ADDR;
  127. /* Read address values, skipping high cell */
  128. cp = of_read_number(range + 1, na - 1);
  129. s = of_read_number(range + na + pna, ns);
  130. da = of_read_number(addr + 1, na - 1);
  131. pr_debug("OF: PCI map, cp=%llx, s=%llx, da=%llx\n",
  132. (unsigned long long)cp, (unsigned long long)s,
  133. (unsigned long long)da);
  134. if (da < cp || da >= (cp + s))
  135. return OF_BAD_ADDR;
  136. return da - cp;
  137. }
  138. static int of_bus_pci_translate(__be32 *addr, u64 offset, int na)
  139. {
  140. return of_bus_default_translate(addr + 1, offset, na - 1);
  141. }
  142. const __be32 *of_get_pci_address(struct device_node *dev, int bar_no, u64 *size,
  143. unsigned int *flags)
  144. {
  145. const __be32 *prop;
  146. unsigned int psize;
  147. struct device_node *parent;
  148. struct of_bus *bus;
  149. int onesize, i, na, ns;
  150. /* Get parent & match bus type */
  151. parent = of_get_parent(dev);
  152. if (parent == NULL)
  153. return NULL;
  154. bus = of_match_bus(parent);
  155. if (strcmp(bus->name, "pci")) {
  156. of_node_put(parent);
  157. return NULL;
  158. }
  159. bus->count_cells(dev, &na, &ns);
  160. of_node_put(parent);
  161. if (!OF_CHECK_ADDR_COUNT(na))
  162. return NULL;
  163. /* Get "reg" or "assigned-addresses" property */
  164. prop = of_get_property(dev, bus->addresses, &psize);
  165. if (prop == NULL)
  166. return NULL;
  167. psize /= 4;
  168. onesize = na + ns;
  169. for (i = 0; psize >= onesize; psize -= onesize, prop += onesize, i++) {
  170. u32 val = be32_to_cpu(prop[0]);
  171. if ((val & 0xff) == ((bar_no * 4) + PCI_BASE_ADDRESS_0)) {
  172. if (size)
  173. *size = of_read_number(prop + na, ns);
  174. if (flags)
  175. *flags = bus->get_flags(prop);
  176. return prop;
  177. }
  178. }
  179. return NULL;
  180. }
  181. EXPORT_SYMBOL(of_get_pci_address);
  182. int of_pci_address_to_resource(struct device_node *dev, int bar,
  183. struct resource *r)
  184. {
  185. const __be32 *addrp;
  186. u64 size;
  187. unsigned int flags;
  188. addrp = of_get_pci_address(dev, bar, &size, &flags);
  189. if (addrp == NULL)
  190. return -EINVAL;
  191. return __of_address_to_resource(dev, addrp, size, flags, NULL, r);
  192. }
  193. EXPORT_SYMBOL_GPL(of_pci_address_to_resource);
  194. int of_pci_range_parser_init(struct of_pci_range_parser *parser,
  195. struct device_node *node)
  196. {
  197. const int na = 3, ns = 2;
  198. int rlen;
  199. parser->node = node;
  200. parser->pna = of_n_addr_cells(node);
  201. parser->np = parser->pna + na + ns;
  202. parser->range = of_get_property(node, "ranges", &rlen);
  203. if (parser->range == NULL)
  204. return -ENOENT;
  205. parser->end = parser->range + rlen / sizeof(__be32);
  206. return 0;
  207. }
  208. EXPORT_SYMBOL_GPL(of_pci_range_parser_init);
  209. struct of_pci_range *of_pci_range_parser_one(struct of_pci_range_parser *parser,
  210. struct of_pci_range *range)
  211. {
  212. const int na = 3, ns = 2;
  213. if (!range)
  214. return NULL;
  215. if (!parser->range || parser->range + parser->np > parser->end)
  216. return NULL;
  217. range->pci_space = parser->range[0];
  218. range->flags = of_bus_pci_get_flags(parser->range);
  219. range->pci_addr = of_read_number(parser->range + 1, ns);
  220. range->cpu_addr = of_translate_address(parser->node,
  221. parser->range + na);
  222. range->size = of_read_number(parser->range + parser->pna + na, ns);
  223. parser->range += parser->np;
  224. /* Now consume following elements while they are contiguous */
  225. while (parser->range + parser->np <= parser->end) {
  226. u32 flags, pci_space;
  227. u64 pci_addr, cpu_addr, size;
  228. pci_space = be32_to_cpup(parser->range);
  229. flags = of_bus_pci_get_flags(parser->range);
  230. pci_addr = of_read_number(parser->range + 1, ns);
  231. cpu_addr = of_translate_address(parser->node,
  232. parser->range + na);
  233. size = of_read_number(parser->range + parser->pna + na, ns);
  234. if (flags != range->flags)
  235. break;
  236. if (pci_addr != range->pci_addr + range->size ||
  237. cpu_addr != range->cpu_addr + range->size)
  238. break;
  239. range->size += size;
  240. parser->range += parser->np;
  241. }
  242. return range;
  243. }
  244. EXPORT_SYMBOL_GPL(of_pci_range_parser_one);
  245. #endif /* CONFIG_PCI */
  246. /*
  247. * ISA bus specific translator
  248. */
  249. static int of_bus_isa_match(struct device_node *np)
  250. {
  251. return !strcmp(np->name, "isa");
  252. }
  253. static void of_bus_isa_count_cells(struct device_node *child,
  254. int *addrc, int *sizec)
  255. {
  256. if (addrc)
  257. *addrc = 2;
  258. if (sizec)
  259. *sizec = 1;
  260. }
  261. static u64 of_bus_isa_map(__be32 *addr, const __be32 *range, int na, int ns,
  262. int pna)
  263. {
  264. u64 cp, s, da;
  265. /* Check address type match */
  266. if ((addr[0] ^ range[0]) & cpu_to_be32(1))
  267. return OF_BAD_ADDR;
  268. /* Read address values, skipping high cell */
  269. cp = of_read_number(range + 1, na - 1);
  270. s = of_read_number(range + na + pna, ns);
  271. da = of_read_number(addr + 1, na - 1);
  272. pr_debug("OF: ISA map, cp=%llx, s=%llx, da=%llx\n",
  273. (unsigned long long)cp, (unsigned long long)s,
  274. (unsigned long long)da);
  275. if (da < cp || da >= (cp + s))
  276. return OF_BAD_ADDR;
  277. return da - cp;
  278. }
  279. static int of_bus_isa_translate(__be32 *addr, u64 offset, int na)
  280. {
  281. return of_bus_default_translate(addr + 1, offset, na - 1);
  282. }
  283. static unsigned int of_bus_isa_get_flags(const __be32 *addr)
  284. {
  285. unsigned int flags = 0;
  286. u32 w = be32_to_cpup(addr);
  287. if (w & 1)
  288. flags |= IORESOURCE_IO;
  289. else
  290. flags |= IORESOURCE_MEM;
  291. return flags;
  292. }
  293. /*
  294. * Array of bus specific translators
  295. */
  296. static struct of_bus of_busses[] = {
  297. #ifdef CONFIG_PCI
  298. /* PCI */
  299. {
  300. .name = "pci",
  301. .addresses = "assigned-addresses",
  302. .match = of_bus_pci_match,
  303. .count_cells = of_bus_pci_count_cells,
  304. .map = of_bus_pci_map,
  305. .translate = of_bus_pci_translate,
  306. .get_flags = of_bus_pci_get_flags,
  307. },
  308. #endif /* CONFIG_PCI */
  309. /* ISA */
  310. {
  311. .name = "isa",
  312. .addresses = "reg",
  313. .match = of_bus_isa_match,
  314. .count_cells = of_bus_isa_count_cells,
  315. .map = of_bus_isa_map,
  316. .translate = of_bus_isa_translate,
  317. .get_flags = of_bus_isa_get_flags,
  318. },
  319. /* Default */
  320. {
  321. .name = "default",
  322. .addresses = "reg",
  323. .match = NULL,
  324. .count_cells = of_bus_default_count_cells,
  325. .map = of_bus_default_map,
  326. .translate = of_bus_default_translate,
  327. .get_flags = of_bus_default_get_flags,
  328. },
  329. };
  330. static struct of_bus *of_match_bus(struct device_node *np)
  331. {
  332. int i;
  333. for (i = 0; i < ARRAY_SIZE(of_busses); i++)
  334. if (!of_busses[i].match || of_busses[i].match(np))
  335. return &of_busses[i];
  336. BUG();
  337. return NULL;
  338. }
  339. static int of_translate_one(struct device_node *parent, struct of_bus *bus,
  340. struct of_bus *pbus, __be32 *addr,
  341. int na, int ns, int pna, const char *rprop)
  342. {
  343. const __be32 *ranges;
  344. unsigned int rlen;
  345. int rone;
  346. u64 offset = OF_BAD_ADDR;
  347. /* Normally, an absence of a "ranges" property means we are
  348. * crossing a non-translatable boundary, and thus the addresses
  349. * below the current not cannot be converted to CPU physical ones.
  350. * Unfortunately, while this is very clear in the spec, it's not
  351. * what Apple understood, and they do have things like /uni-n or
  352. * /ht nodes with no "ranges" property and a lot of perfectly
  353. * useable mapped devices below them. Thus we treat the absence of
  354. * "ranges" as equivalent to an empty "ranges" property which means
  355. * a 1:1 translation at that level. It's up to the caller not to try
  356. * to translate addresses that aren't supposed to be translated in
  357. * the first place. --BenH.
  358. *
  359. * As far as we know, this damage only exists on Apple machines, so
  360. * This code is only enabled on powerpc. --gcl
  361. */
  362. ranges = of_get_property(parent, rprop, &rlen);
  363. #if !defined(CONFIG_PPC)
  364. if (ranges == NULL) {
  365. pr_err("OF: no ranges; cannot translate\n");
  366. return 1;
  367. }
  368. #endif /* !defined(CONFIG_PPC) */
  369. if (ranges == NULL || rlen == 0) {
  370. offset = of_read_number(addr, na);
  371. memset(addr, 0, pna * 4);
  372. pr_debug("OF: empty ranges; 1:1 translation\n");
  373. goto finish;
  374. }
  375. pr_debug("OF: walking ranges...\n");
  376. /* Now walk through the ranges */
  377. rlen /= 4;
  378. rone = na + pna + ns;
  379. for (; rlen >= rone; rlen -= rone, ranges += rone) {
  380. offset = bus->map(addr, ranges, na, ns, pna);
  381. if (offset != OF_BAD_ADDR)
  382. break;
  383. }
  384. if (offset == OF_BAD_ADDR) {
  385. pr_debug("OF: not found !\n");
  386. return 1;
  387. }
  388. memcpy(addr, ranges + na, 4 * pna);
  389. finish:
  390. of_dump_addr("OF: parent translation for:", addr, pna);
  391. pr_debug("OF: with offset: %llx\n", (unsigned long long)offset);
  392. /* Translate it into parent bus space */
  393. return pbus->translate(addr, offset, pna);
  394. }
  395. /*
  396. * Translate an address from the device-tree into a CPU physical address,
  397. * this walks up the tree and applies the various bus mappings on the
  398. * way.
  399. *
  400. * Note: We consider that crossing any level with #size-cells == 0 to mean
  401. * that translation is impossible (that is we are not dealing with a value
  402. * that can be mapped to a cpu physical address). This is not really specified
  403. * that way, but this is traditionally the way IBM at least do things
  404. */
  405. static u64 __of_translate_address(struct device_node *dev,
  406. const __be32 *in_addr, const char *rprop)
  407. {
  408. struct device_node *parent = NULL;
  409. struct of_bus *bus, *pbus;
  410. __be32 addr[OF_MAX_ADDR_CELLS];
  411. int na, ns, pna, pns;
  412. u64 result = OF_BAD_ADDR;
  413. pr_debug("OF: ** translation for device %s **\n", of_node_full_name(dev));
  414. /* Increase refcount at current level */
  415. of_node_get(dev);
  416. /* Get parent & match bus type */
  417. parent = of_get_parent(dev);
  418. if (parent == NULL)
  419. goto bail;
  420. bus = of_match_bus(parent);
  421. /* Count address cells & copy address locally */
  422. bus->count_cells(dev, &na, &ns);
  423. if (!OF_CHECK_COUNTS(na, ns)) {
  424. printk(KERN_ERR "prom_parse: Bad cell count for %s\n",
  425. of_node_full_name(dev));
  426. goto bail;
  427. }
  428. memcpy(addr, in_addr, na * 4);
  429. pr_debug("OF: bus is %s (na=%d, ns=%d) on %s\n",
  430. bus->name, na, ns, of_node_full_name(parent));
  431. of_dump_addr("OF: translating address:", addr, na);
  432. /* Translate */
  433. for (;;) {
  434. /* Switch to parent bus */
  435. of_node_put(dev);
  436. dev = parent;
  437. parent = of_get_parent(dev);
  438. /* If root, we have finished */
  439. if (parent == NULL) {
  440. pr_debug("OF: reached root node\n");
  441. result = of_read_number(addr, na);
  442. break;
  443. }
  444. /* Get new parent bus and counts */
  445. pbus = of_match_bus(parent);
  446. pbus->count_cells(dev, &pna, &pns);
  447. if (!OF_CHECK_COUNTS(pna, pns)) {
  448. printk(KERN_ERR "prom_parse: Bad cell count for %s\n",
  449. of_node_full_name(dev));
  450. break;
  451. }
  452. pr_debug("OF: parent bus is %s (na=%d, ns=%d) on %s\n",
  453. pbus->name, pna, pns, of_node_full_name(parent));
  454. /* Apply bus translation */
  455. if (of_translate_one(dev, bus, pbus, addr, na, ns, pna, rprop))
  456. break;
  457. /* Complete the move up one level */
  458. na = pna;
  459. ns = pns;
  460. bus = pbus;
  461. of_dump_addr("OF: one level translation:", addr, na);
  462. }
  463. bail:
  464. of_node_put(parent);
  465. of_node_put(dev);
  466. return result;
  467. }
  468. u64 of_translate_address(struct device_node *dev, const __be32 *in_addr)
  469. {
  470. return __of_translate_address(dev, in_addr, "ranges");
  471. }
  472. EXPORT_SYMBOL(of_translate_address);
  473. u64 of_translate_dma_address(struct device_node *dev, const __be32 *in_addr)
  474. {
  475. return __of_translate_address(dev, in_addr, "dma-ranges");
  476. }
  477. EXPORT_SYMBOL(of_translate_dma_address);
  478. bool of_can_translate_address(struct device_node *dev)
  479. {
  480. struct device_node *parent;
  481. struct of_bus *bus;
  482. int na, ns;
  483. parent = of_get_parent(dev);
  484. if (parent == NULL)
  485. return false;
  486. bus = of_match_bus(parent);
  487. bus->count_cells(dev, &na, &ns);
  488. of_node_put(parent);
  489. return OF_CHECK_COUNTS(na, ns);
  490. }
  491. EXPORT_SYMBOL(of_can_translate_address);
  492. const __be32 *of_get_address(struct device_node *dev, int index, u64 *size,
  493. unsigned int *flags)
  494. {
  495. const __be32 *prop;
  496. unsigned int psize;
  497. struct device_node *parent;
  498. struct of_bus *bus;
  499. int onesize, i, na, ns;
  500. /* Get parent & match bus type */
  501. parent = of_get_parent(dev);
  502. if (parent == NULL)
  503. return NULL;
  504. bus = of_match_bus(parent);
  505. bus->count_cells(dev, &na, &ns);
  506. of_node_put(parent);
  507. if (!OF_CHECK_ADDR_COUNT(na))
  508. return NULL;
  509. /* Get "reg" or "assigned-addresses" property */
  510. prop = of_get_property(dev, bus->addresses, &psize);
  511. if (prop == NULL)
  512. return NULL;
  513. psize /= 4;
  514. onesize = na + ns;
  515. for (i = 0; psize >= onesize; psize -= onesize, prop += onesize, i++)
  516. if (i == index) {
  517. if (size)
  518. *size = of_read_number(prop + na, ns);
  519. if (flags)
  520. *flags = bus->get_flags(prop);
  521. return prop;
  522. }
  523. return NULL;
  524. }
  525. EXPORT_SYMBOL(of_get_address);
  526. unsigned long __weak pci_address_to_pio(phys_addr_t address)
  527. {
  528. if (address > IO_SPACE_LIMIT)
  529. return (unsigned long)-1;
  530. return (unsigned long) address;
  531. }
  532. static int __of_address_to_resource(struct device_node *dev,
  533. const __be32 *addrp, u64 size, unsigned int flags,
  534. const char *name, struct resource *r)
  535. {
  536. u64 taddr;
  537. if ((flags & (IORESOURCE_IO | IORESOURCE_MEM)) == 0)
  538. return -EINVAL;
  539. taddr = of_translate_address(dev, addrp);
  540. if (taddr == OF_BAD_ADDR)
  541. return -EINVAL;
  542. memset(r, 0, sizeof(struct resource));
  543. if (flags & IORESOURCE_IO) {
  544. unsigned long port;
  545. port = pci_address_to_pio(taddr);
  546. if (port == (unsigned long)-1)
  547. return -EINVAL;
  548. r->start = port;
  549. r->end = port + size - 1;
  550. } else {
  551. r->start = taddr;
  552. r->end = taddr + size - 1;
  553. }
  554. r->flags = flags;
  555. r->name = name ? name : dev->full_name;
  556. return 0;
  557. }
  558. /**
  559. * of_address_to_resource - Translate device tree address and return as resource
  560. *
  561. * Note that if your address is a PIO address, the conversion will fail if
  562. * the physical address can't be internally converted to an IO token with
  563. * pci_address_to_pio(), that is because it's either called to early or it
  564. * can't be matched to any host bridge IO space
  565. */
  566. int of_address_to_resource(struct device_node *dev, int index,
  567. struct resource *r)
  568. {
  569. const __be32 *addrp;
  570. u64 size;
  571. unsigned int flags;
  572. const char *name = NULL;
  573. addrp = of_get_address(dev, index, &size, &flags);
  574. if (addrp == NULL)
  575. return -EINVAL;
  576. /* Get optional "reg-names" property to add a name to a resource */
  577. of_property_read_string_index(dev, "reg-names", index, &name);
  578. return __of_address_to_resource(dev, addrp, size, flags, name, r);
  579. }
  580. EXPORT_SYMBOL_GPL(of_address_to_resource);
  581. struct device_node *of_find_matching_node_by_address(struct device_node *from,
  582. const struct of_device_id *matches,
  583. u64 base_address)
  584. {
  585. struct device_node *dn = of_find_matching_node(from, matches);
  586. struct resource res;
  587. while (dn) {
  588. if (of_address_to_resource(dn, 0, &res))
  589. continue;
  590. if (res.start == base_address)
  591. return dn;
  592. dn = of_find_matching_node(dn, matches);
  593. }
  594. return NULL;
  595. }
  596. /**
  597. * of_iomap - Maps the memory mapped IO for a given device_node
  598. * @device: the device whose io range will be mapped
  599. * @index: index of the io range
  600. *
  601. * Returns a pointer to the mapped memory
  602. */
  603. void __iomem *of_iomap(struct device_node *np, int index)
  604. {
  605. struct resource res;
  606. if (of_address_to_resource(np, index, &res))
  607. return NULL;
  608. return ioremap(res.start, resource_size(&res));
  609. }
  610. EXPORT_SYMBOL(of_iomap);